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Self-assembly and properties of low-dimensional nanomaterials based on π-conjugated organic molecules

机译:基于π共轭有机分子的低维纳米材料的自组装及其性能

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摘要

Building supramolecular architectures with well-defined shapes and functions is of great importance in materials science, nanochemistry, and biomimetic chemistry. In recent years, we have devoted much effort to the construction of well-defined supramolecular structures through noncovalent forces such as hydrogen bonding, π-stacking, metal-ligand bonds, and hydrophilic and hydrophobic interactions, with the aid of functional building blocks. The morphologies and their physical properties were studied, and new methods for the construction of one-dimensional nanoscale structures have been developed. In this review, we summarize our recent studies on the design and synthesis of the supramolecular systems, as well as the physical properties of nanoscale structures.
机译:在材料科学,纳米化学和仿生化学中,构建具有明确定义的形状和功能的超分子体系结构非常重要。近年来,我们在功能性构建基团的帮助下,通过非共价力(例如氢键,π堆积,金属-配体键以及亲水和疏水相互作用),致力于建立明确的超分子结构。研究了其形态和物理性质,并开发了构建一维纳米尺度结构的新方法。在这篇综述中,我们总结了我们对超分子系统的设计和合成以及纳米级结构的物理性质的最新研究。

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